US6950552B2

System and method for precise location of a point of interest

Summary by NHIP

Point location via surface fitting

The method locates a point of interest by generating a parameterized surface from sample data collected along a continuous trajectory. Distinctive elements include determining the trajectory based on region characteristics like radius or approximate center, then confirming the calculated location by measuring the region at that specific point.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

A scanning system and method for locating a point within a region. The method may: 1) determine or locate a region of interest in the region; 2) determine one or more characteristics of the region of interest within the region, wherein the region of interest includes the point of interest; 3) determine a continuous trajectory based on the one or more characteristics of the region of interest; 4) measure the region of interest at a plurality of points along the continuous trajectory to generate a sample data set; 5) perform a surface fit of the sample data set using the approximate model to generate a parameterized surface; and 6) calculate a location of the point of interest based on the parameterized surface. The method may include measuring the region at and/or near the calculated location to confirm the solution, and may also include generating output comprising the results.

US6950552B2, drawing sheet 1
Sheet 1 of 59

Term

Term ended

Expired 6 May 2023, 3.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

40 claims: 3 independent, 37 dependent

  1. 1
    Broadest claimClaim Score 61, broad(NHIP)A method for locating a point of interest in a region, wherein an approximate model of the region is known, the method comprising:determining one or more characteristics of a region of interest within the region, wherein said region of interest includes the point of interest;determining a continuous trajectory based on the one or more characteristics of the region of interest, wherein the continuous trajectory allows measurement of the region of interest;measuring the region of interest at a plurality of points along the continuous trajectory to generate a sample data set;performing a surface fit of the sample data set using the approximate model to generate a parameterized surface;and calculating a location of the point of interest based on the parameterized surface.
  2. 15
    A system for locating a point of interest in a region, wherein an approximate model of the region is known, the system comprising:a sensor;and a computer which is operable to couple to said sensor, said computer comprising: a CPU;and a memory medium which is operable to store a scanning program;wherein said CPU is operable to execute said scanning program to perform: determining one or more characteristics of a region of interest within the region, wherein said region of interest includes the point of interest;determining a continuous trajectory based on the one or more characteristics of the region of interest, wherein the continuous trajectory allows measurement of the region of interest;measuring the region of interest with said sensor at a plurality of points along the continuous trajectory to generate a sample data set;performing a surface fit of the sample data set using the approximate model to generate a parameterized surface;and calculating a location of the point of interest based on the parameterized surface.
  3. 28
    A memory medium containing program instructions which are executable to locate a point of interest in a region, wherein an approximate model of the region is known, and wherein said program instructions are executable to perform:determining one or more characteristics of a region of interest within the region, wherein said region of interest includes the point of interest;determining a continuous trajectory based on the one or more characteristics of the region of interest, wherein the continuous trajectory allows measurement of the region of interest;measuring the region of interest with a sensor at a plurality of points along the continuous trajectory to generate a sample data set;performing a surface fit of the sample data set using the approximate model to generate a parameterized surface;and calculating a location of the point of interest based on the parameterized surface.